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Durability of mechanically loaded Strain-hardening cement-based composites (SHCC)

机译:机械加载应变硬化水泥基复合材料的耐久性(SHCC)

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Strain-hardening cement-based composites (SHCC) resist increased tensile stress after first crack formation, over a significant range of tensile strain. This increased strength and strain capacity is achieved by effective crack bridging by fibres, across multiple cracks of widths in the micro-range. Whether the crack width limitation translates into increased durability through retardation of ingress of moisture, gas and other deleterious matter, is scrutinised in this paper. The potential of the comparatively new composite material becomes obvious, yet it is clearly outlined that further research is necessary before we fully understand the basic mechanisms underlying durability of SHCC.
机译:在第一裂纹形成之后,应变硬化水泥基复合材料(SHCC)在大大拉伸菌株范围内抵抗抗裂纹形成后的拉伸应力。通过通过纤维的有效裂缝桥接,在微距离的宽度的多个裂缝上实现这种提高的强度和应变能力。在本文中,裂缝宽度限制是否通过延迟延迟,通过延迟耐水性,气体和其他有害物质的延迟,在本文中仔细审查。相对新的复合材料的潜力变得显而易见,但清楚地概述了在我们充分了解SHCC耐用性基本机制之前,需要进一步研究。

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